We present results of direct numerical simulations of travelling waves in dense assemblies of monodisperse spherical particles fluidized by a liquid. The cases we study have been derived from the experimental work of others. In these simulations, the flow of interstitial fluid is solved by the lattice-Boltzmann method (LBM) and the particles move under the influence of gravity, hydrodynamic forces stemming from the LBM, subgrid-scale lubrication forces and hard-sphere collisions. We first show that the propagating inhomogeneous structures seen in the simulations are in agreement with those observed experimentally. We then use the detailed information contained in the simulation results to assess aspects of two-fluid model closures, namely, ...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
We present results of direct numerical simulations of travelling waves in dense assemblies of monodi...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
International audienceNumerical simulations of dense suspensions with a high resolution of ...
This the pre-print of an article submitted to International Journal of Multiphase Flow,Volume 125, A...
We present a high-fidelity simulation model for dense suspensions of spherical and non-spherical par...
International audienceThis numerical work intends to highlight the most prominent physical ingredien...
We have simulated the dynamics of suspensions of bres sedimenting in the limit of zero Reynolds numb...
We present a detailed study of short-time dynamic properties in concentrated suspensions of charge-s...
Flowing solid-liquid suspensions are abundant in natural and engineered systems. In general, solid-l...
Using an immersed boundary-lattice Boltzmann method, we investigated the response of dense granular ...
Talk: Plenary Abstract: Fluidized suspensions of particles manifest inhomogeneities spanning a wide...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...
We present results of direct numerical simulations of travelling waves in dense assemblies of monodi...
Three-dimensional direct numerical simulations of dense suspensions of monodisperse spherical partic...
We present a lattice Boltzmann model designed for the simulation of dilute and dense finite-sized ri...
International audienceNumerical simulations of dense suspensions with a high resolution of ...
This the pre-print of an article submitted to International Journal of Multiphase Flow,Volume 125, A...
We present a high-fidelity simulation model for dense suspensions of spherical and non-spherical par...
International audienceThis numerical work intends to highlight the most prominent physical ingredien...
We have simulated the dynamics of suspensions of bres sedimenting in the limit of zero Reynolds numb...
We present a detailed study of short-time dynamic properties in concentrated suspensions of charge-s...
Flowing solid-liquid suspensions are abundant in natural and engineered systems. In general, solid-l...
Using an immersed boundary-lattice Boltzmann method, we investigated the response of dense granular ...
Talk: Plenary Abstract: Fluidized suspensions of particles manifest inhomogeneities spanning a wide...
We consider the steady shear flow of a homogeneous and dense assembly of hard spheres suspended in a...
International audienceNon-brownian suspensions of hard particles in a viscous fluid are characterize...
Wang, Lian-PingIn this dissertation, we conduct direct simulations of particle-laden viscous flows w...